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在玉米黑粉菌中,结构不同的端粒结合蛋白在端粒复制、重组和保护过程中执行不重叠的功能。

Structurally distinct telomere-binding proteins in Ustilago maydis execute non-overlapping functions in telomere replication, recombination, and protection.

作者信息

Yu Eun Young, Zahid Syed S, Ganduri Swapna, Sutherland Jeanette H, Hsu Min, Holloman William K, Lue Neal F

机构信息

Department of Microbiology & Immunology, W. R. Hearst Microbiology Research Center, Weill Cornell Medicine, 1300 York Avenue, New York, NY, 10065, USA.

Sandra and Edward Meyer Cancer Center, Weill Cornell Medicine, 1300 York Avenue, New York, NY, 10065, USA.

出版信息

Commun Biol. 2020 Dec 16;3(1):777. doi: 10.1038/s42003-020-01505-z.

Abstract

Duplex telomere binding proteins exhibit considerable structural and functional diversity in fungi. Herein we interrogate the activities and functions of two Myb-containing, duplex telomere repeat-binding factors in Ustilago maydis, a basidiomycete that is evolutionarily distant from the standard fungi. These two telomere-binding proteins, UmTay1 and UmTrf2, despite having distinct domain structures, exhibit comparable affinities and sequence specificity for the canonical telomere repeats. UmTay1 specializes in promoting telomere replication and an ALT-like pathway, most likely by modulating the helicase activity of Blm. UmTrf2, in contrast, is critical for telomere protection; transcriptional repression of Umtrf2 leads to severe growth defects and profound telomere aberrations. Comparative analysis of UmTay1 homologs in different phyla reveals broad functional diversity for this protein family and provides a case study for how DNA-binding proteins can acquire and lose functions at various chromosomal locations. Our findings also point to stimulatory effect of telomere protein on ALT in Ustilago maydis that may be conserved in other systems.

摘要

双链端粒结合蛋白在真菌中表现出相当大的结构和功能多样性。在此,我们研究了玉米黑粉菌(一种与标准真菌在进化上距离较远的担子菌)中两个含Myb的双链端粒重复序列结合因子的活性和功能。这两个端粒结合蛋白,即UmTay1和UmTrf2,尽管具有不同的结构域结构,但对典型的端粒重复序列表现出相当的亲和力和序列特异性。UmTay1专门促进端粒复制和类似ALT的途径,很可能是通过调节Blm的解旋酶活性来实现的。相比之下,UmTrf2对端粒保护至关重要;Umtrf2的转录抑制会导致严重的生长缺陷和明显的端粒畸变。对不同门中UmTay1同源物的比较分析揭示了该蛋白家族广泛的功能多样性,并为DNA结合蛋白如何在不同染色体位置获得和丧失功能提供了一个案例研究。我们的研究结果还表明,端粒蛋白对玉米黑粉菌中ALT的刺激作用可能在其他系统中保守。

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